生物
结核分枝杆菌
效应器
表型
免疫系统
免疫学
肺结核
T细胞
人口
细胞
病毒学
遗传学
基因
医学
环境卫生
病理
作者
Megan K. Proulx,Christine D. Wiggins,Charlotte J. Reames,Chin‐Jen Wu,Michael C Kiritsy,Ping Xu,Judith Gallant,Patricia S. Grace,Brooke A. Fenderson,Clare M. Smith,Cecilia S. Lindestam Arlehamn,Galit Alter,Douglas A. Lauffenburger,Christopher M. Sassetti
摘要
While control of Mycobacterium tuberculosis (Mtb) infection is generally understood to require Th1 cells and IFNγ, infection produces a spectrum of immunological and pathological phenotypes in diverse human populations. By characterizing Mtb infection in mouse strains that model the genetic heterogeneity of an outbred population, we identified strains that control Mtb comparably to a standard IFNγ-dependent mouse model but with substantially lower lung IFNγ levels. We report that these mice have a significantly altered CD4 T cell profile that specifically lacks the terminal effector Th1 subset and that this phenotype is detectable before infection. These mice still require T cells to control bacterial burden but are less dependent on IFNγ signaling. Instead, noncanonical immune features such as Th17-like CD4 and γδT cells correlate with low bacterial burden. We find the same Th17 transcriptional programs are associated with resistance to Mtb infection in humans, implicating specific non-Th1 T cell responses as a common feature of Mtb control across species.
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